Carlos Alvarez-Moya | Environmental Science | Best Researcher Award

Dr. Carlos Alvarez-Moya | Environmental Science | Best Researcher Award

University of Guadalajara, Mexico

Dr. Carlos Alvarez-Moya is a distinguished Professor and Researcher (Titular C) at the University of Guadalajara, Mexico, with over three decades of academic excellence and scientific contribution in the fields of Genetic Toxicology, Molecular Genetics, and Biomedical Sciences. His scholarly pursuits are centered on understanding the mechanisms of genetic damage, mutagenesis, and environmental genotoxicity, with a focus on developing and applying bioassays—such as the Comet Assay—to evaluate DNA damage in animal and plant systems. Throughout his academic career, Dr. Alvarez-Moya has demonstrated a profound commitment to both research and education. He has published over 40 scientific articles in prestigious national and international journals, authored five books, and contributed nine book chapters, making him a leading voice in genetic toxicology research in Latin America. His studies have provided valuable insights into the assessment of genotoxic risk, contributing to public health, environmental safety, and policy-making related to toxic substances. He is an active Member of the Mexican Academy of Sciences and has been recognized as a National Researcher (SNI Level I) by the National System of Researchers (CONACYT), affirming his standing as an influential figure in Mexico’s scientific community. Dr. Alvarez-Moya’s leadership extends beyond research, encompassing curriculum development and academic mentoring, where he has played a vital role in shaping undergraduate and postgraduate programs in genetics and biology. His dedication to education is reflected in his long-standing contribution to teaching subjects such as Genetics, Advanced Genetics, Evolutionary Genetics, and Molecular Biology. His work has earned multiple accolades, including the Premio al Mérito Académico, the Premio COCYTJAL de Ciencia Jalisco, and the CONPPRYT Science Dissemination Award, among others. Beyond academia, his research has tangible societal impact, offering innovative methods for genetic damage detection that aid in environmental monitoring, biomedical applications, and sustainable biotechnology. Through his scientific rigor, mentorship, and vision, Dr. Alvarez-Moya continues to contribute meaningfully to the global advancement of life sciences and environmental genetics.

Profiles: Scopus | ORCID

Featured Publications

  1. Reynoso-Silva, M., Alvarez-Moya, C., Guzmán-Rubio, F. M., Velázquez-Cruz, D. G., Moreno-Del Río, D., Ramírez-Hernández, B. C., Barrientos-Ramírez, L., Vargas-Radillo, J. de J., Gutiérrez-Martínez, P. B., & Ruíz-López, M. A. (2025). Genetic damage to human lymphocytes induced by contaminated water in populations surrounding Lake Chapala and the Santiago River, Jalisco, México. Toxics, 13(10), 887.

  2. Reynoso-Silva, M., Alvarez-Moya, C., Vargas-Radillo, J. de J., Barrientos-Ramírez, L., & Rodríguez-Macías, R. (2024). Genetic damage in human blood cells exposed to germicidal lamps and cytoprotection of ascorbic acid. Revista Biomédica, 35(2).

  3. Alvarez-Moya, C., & Reynoso-Silva, M. (2023). Assessment of genetic damage induced via glyphosate and three commercial formulations with adjuvants in human blood cells. International Journal of Molecular Sciences, 24(5), 4560.

  4. Alvarez Moya, C., Reynoso Silva, M., Barrientos Ramírez, L., & Vargas Radillo, J. de J. (2022). Evaluation of genetic damage and antigenotoxic effect of ascorbic acid in erythrocytes of Orochromis niloticus and Ambystoma mexicanum using migration groups as a parameter. Applied Sciences, 12(15), 7507.

  5. Alvarez-Moya, C., Sámano-León, A. G., Reynoso-Silva, M., Ramírez-Velasco, R., Ruíz-López, M. A., & Villalobos-Arámbula, A. R. (2022). Antigenotoxic effect of ascorbic acid and resveratrol in erythrocytes of Ambystoma mexicanum, Oreochromis niloticus and human lymphocytes exposed to glyphosate. Current Issues in Molecular Biology, 44(5), 151.

Xinjian Fan | Environmental Science | Best Researcher Award

Mr. Xinjian Fan | Environmental Science | Best Researcher Award

Associate Professor from Lanzhou University of Technology, China

Dr. Fan Xinjian is an esteemed associate professor and master’s supervisor specializing in water conservancy and hydropower engineering. He currently serves as the Director of the Department of Water Conservancy and Hydropower Engineering at Lanzhou University of Technology. A graduate with a Ph.D. in Engineering from the Nanjing Hydraulic Research Institute, Dr. Fan has significantly contributed to the academic and professional landscape of hydraulic engineering in China. With a research portfolio spanning over 50 national, provincial, and enterprise-level projects, his work has brought forth practical solutions to some of the field’s most complex problems, including high arch dam flood discharge and energy dissipation mechanisms. As a dedicated educator, he integrates scientific research with hands-on learning experiences for students, having led numerous teaching and innovation projects. His contribution is well-recognized through various awards and honors in both research and teaching. Dr. Fan’s expertise in ecological hydraulics, computational hydraulics, and sediment dynamics makes him a leading authority in his field. His profile is a model of how academic leadership, research excellence, and practical application can come together to support national infrastructure and environmental goals, making him a strong candidate for the Best Researcher Award.

Professional Profile

Education

Dr. Fan Xinjian holds a Doctorate in Engineering from the prestigious Nanjing Hydraulic Research Institute. His advanced education laid a strong foundation in the theoretical and applied aspects of water resources and hydraulic engineering. At the doctoral level, he received specialized training in computational and ecological hydraulics, river basin management, sediment transport dynamics, and energy dissipation mechanisms. His academic training was reinforced with hands-on research experience, equipping him to tackle real-world engineering problems with a research-driven approach. Dr. Fan’s formal education combined rigorous academic coursework with practical application, which played a key role in developing his expertise in high-head hydropower systems, open channel flow analysis, and hydraulic structure optimization. The interdisciplinary exposure during his Ph.D. has enabled him to effectively bridge theory and practice, particularly in hydrological modeling, flow dynamics, and flood risk mitigation. His educational background continues to inform his ongoing research, teaching, and innovation work, as he trains the next generation of hydraulic engineers. His ability to translate complex hydraulic theories into practical designs and policies is a direct reflection of the quality of education he received and the dedication he has shown throughout his academic journey.

Professional Experience

Dr. Fan Xinjian brings over two decades of academic and research experience in hydraulic and water resources engineering. He serves as the Director of the Department of Water Conservancy and Hydropower Engineering at Lanzhou University of Technology. He also leads the provincial experimental teaching demonstration center and coordinates the Hongliu First-Class Major in Water Conservancy and Hydropower Engineering. His professional journey includes leadership of more than 50 national and provincial-level projects, including the National Natural Science Foundation, National Science and Technology Support Plan, and international cooperative research initiatives. Dr. Fan is a member of key professional bodies such as the Chinese Hydraulic Society, the Gansu Hydraulic Society, and the Chinese Hydropower Engineering Society. In his academic capacity, he has developed and delivered core undergraduate and graduate-level courses, including “Introduction to Water Conservancy Engineering” and “Hydraulic Structures.” He has also supervised numerous graduation theses, practical internships, and student design projects. His leadership in project management, educational innovation, and engineering applications exemplifies a strong blend of research, teaching, and community engagement. Dr. Fan’s professional experience highlights his comprehensive understanding of the hydraulic engineering landscape, making him a well-respected figure in both academic and engineering circles.

Research Interest

Dr. Fan Xinjian’s primary research interests lie in the fields of computational hydraulics, ecological hydraulics, hydraulic structures, and river basin sediment dynamics. His research is driven by the need to address real-world water conservancy challenges, especially in mountainous terrains and regions with high-head dams. One of his key interests is the study and optimization of flood discharge and energy dissipation systems for large-scale hydropower structures. He has made significant contributions to this area through research on the Jinping I high arch dam and Longkoukou dam systems. His work extends to understanding the interactions between water and vegetation in open channels, particularly under the influence of submerged flexible vegetation. This research sheds light on resistance, flow patterns, and sediment transport—critical elements for ecological conservation and hydraulic modeling. He is also keenly interested in developing digital simulation systems that integrate ecological and engineering hydraulics for better river management. These interests align closely with the pressing global issues of sustainable water infrastructure, flood management, and river ecosystem restoration. Dr. Fan’s multi-disciplinary approach enables him to contribute novel insights and engineering solutions that combine hydrodynamics, environmental science, and computational modeling.

Research Skills

Dr. Fan Xinjian possesses a broad range of research skills that enable him to approach hydraulic engineering problems from both theoretical and applied perspectives. He is highly proficient in computational modeling and simulation, which he uses to analyze complex water flow and energy dissipation systems. His skills include the development of numerical models to assess flood discharge, turbulence, and sediment transport in both natural and engineered waterways. He is adept at laboratory-based experimental research, having led physical modeling studies on high-velocity flow and bottom plate energy dissipation devices. In addition, Dr. Fan is skilled in data analysis, using modern hydraulic measurement tools and statistical software to interpret flow dynamics and optimize hydraulic structures. He also has experience in drafting technical reports, scientific papers, and patent documentation. With strong collaborative abilities, he has coordinated interdisciplinary projects involving engineers, ecologists, and government agencies. His grant writing skills have helped secure major national and provincial funding. Dr. Fan’s mentorship abilities further amplify his research capacity, as he actively involves students in experimentation, fieldwork, and competitions. His wide-ranging skill set allows him to produce high-impact research with direct applications in dam safety, environmental conservation, and water resource management.

Awards and Honors

Dr. Fan Xinjian has received multiple prestigious awards in recognition of his outstanding contributions to research and teaching in hydraulic engineering. His research has been honored with three first prizes and one second prize from the Gansu Water Conservancy Science and Technology Progress Awards, reflecting the practical impact and innovation of his work. In the educational domain, he has secured two second prizes in provincial and ministerial teaching achievement awards, in addition to a third prize in the National University Teachers’ Teaching Innovation Competition. His recognition extends to intellectual property as well, with three national invention patents, five utility model patents, and one software copyright, showcasing his inventive and solutions-oriented research approach. Beyond formal awards, Dr. Fan has earned distinctions such as the Teaching Excellence Award, Graduation Design Outstanding Instructor Award, Teaching Quality Excellence Award, and the Three Education Awards. He has also led student teams to win more than 20 national and provincial science and technology innovation competitions, highlighting his excellence in student mentorship. These accolades not only affirm his research excellence but also his holistic contributions to education, innovation, and professional development in hydraulic engineering.

Conclusion

Dr. Fan Xinjian exemplifies the profile of a high-impact researcher and educator whose work bridges theoretical research and real-world application. His expertise in hydraulic and ecological engineering has led to significant advancements in the understanding and management of complex water systems, particularly in flood control and sediment transport. With more than 50 national and provincial research projects under his leadership or participation, he has developed practical engineering solutions that have been applied to iconic structures such as the Jinping I high arch dam. His recognition through numerous awards and patents highlights his influence and innovation. Furthermore, his dedication to student mentorship and educational excellence reflects his commitment to shaping the next generation of engineers. Through his administrative roles and academic leadership, he contributes actively to national capacity-building in hydraulic engineering. His profile presents a rare integration of research, teaching, and leadership, making him a compelling candidate for the Best Researcher Award. Dr. Fan’s continued contributions are expected to further advance the development of sustainable and intelligent water infrastructure in China and beyond.

Tatiana Marrufo | Environmental Science | Best Researcher Award

Dr. Tatiana Marrufo | Environmental Science | Best Researcher Award

University Fernando Pessoa/Instituto Nacional de Saúde of Mozambique, Mozambique

Dr. Tatiana Jorge Marrufo is a leading public health expert from Mozambique, with over a decade of experience in environmental health, epidemiology, and the intersection of climate change and public health. Holding a PhD in Ecology and Environmental Health from Fernando Pessoa University in Portugal and a Master’s in Public Health from the Science and Technology Higher Education Institute in Mozambique, Dr. Marrufo has made remarkable contributions to health system resilience and climate adaptation. Her work at the National Institute of Health (INS) includes leading the Climate, Environment and Health Platform, directing strategic programs on environmental and occupational health, and coordinating Mozambique’s first National Adaptation Plan for Health. She played a pivotal role in the development of early warning systems for climate-sensitive diseases such as malaria and cholera. Dr. Marrufo has been recognized for her efforts to integrate climate services with public health policy, and her research outputs include high-impact publications on disease modeling, vulnerability assessments, and COVID-19. Her leadership, interdisciplinary skills, and commitment to evidence-based policy-making position her as a key figure in African public health innovation. With her global engagements, she continues to bridge research, policy, and practice, working to safeguard communities from the impacts of environmental change.

Professional Profile

Education

Dr. Tatiana Jorge Marrufo possesses an impressive academic foundation in medicine, public health, and environmental health. She began her journey in the health sciences at Eduardo Mondlane University, where she obtained her degree in Medical Sciences in 2008. This solid grounding in clinical medicine enabled her to understand the practical realities of patient care in Mozambique. Motivated by a broader interest in public health, she pursued a Master’s in Public Health (MPH) at the Science and Technology Higher Education Institute (ISCTEM), completing it in August 2021. Her MPH studies deepened her understanding of health systems, epidemiology, and disease prevention strategies. Dr. Marrufo’s academic pursuits culminated in a PhD in Ecology and Environmental Health from Fernando Pessoa University in Portugal, which she completed in September 2022. Her doctoral research focused on the interrelation between environmental conditions and public health outcomes, particularly within the context of climate-sensitive diseases. Her educational pathway reflects a consistent evolution from clinical knowledge to complex public health challenges influenced by environmental and climate dynamics. Through her interdisciplinary academic training, Dr. Marrufo has developed a unique perspective that integrates ecological, medical, and public health insights—essential for addressing the multifaceted health challenges posed by climate change in Mozambique and beyond.

Professional Experience

Dr. Tatiana Jorge Marrufo has cultivated a distinguished professional career focused on public health and environmental resilience. Since 2015, she has worked at Mozambique’s National Institute of Health (INS), where she has held several high-level roles. From 2016 onward, she led the Climate, Environment and Health Platform of the National Health Observatory, a pioneering initiative assessing climate change impacts on diseases such as malaria and diarrhea. Between 2019 and July 2024, she served as Head of the Central Office of the Technical Secretariat, contributing to national health policy formulation. She currently coordinates the Strategic Program on Environmental Health, which includes Occupational Health, focusing on mitigating environmental risks and enhancing community health responses. Dr. Marrufo has overseen vital initiatives such as the Health Vulnerability and Adaptation Assessment (2019) and the Climate Environment and Health Research Agenda (2022–2031). She also led research on the health impacts of cyclones and has contributed to strengthening health systems’ resilience. Early in her career, she worked at the Centro de Investigação e Desenvolvimento em Etnobotânica and held an academic role at ISCTEM, teaching pharmacology. Through these positions, Dr. Marrufo has consistently demonstrated leadership, vision, and a commitment to integrating scientific evidence into national health strategies.

Research Interests

Dr. Tatiana Jorge Marrufo’s research interests lie at the intersection of climate science, public health, and epidemiology. Her work is particularly focused on understanding how environmental and climatic factors influence the prevalence and distribution of infectious diseases in Mozambique. She is deeply engaged in researching the impacts of extreme weather events—such as heatwaves, floods, and cyclones—on diseases like malaria, cholera, and diarrhea, which remain significant public health challenges in the region. Additionally, Dr. Marrufo is interested in health system resilience, particularly how to design and implement early warning systems for climate-sensitive diseases. Her involvement in the Health Vulnerability and Adaptation Assessment and the development of Mozambique’s Health National Adaptation Plan reflects her dedication to long-term public health planning in the face of climate change. She also explores occupational health, nutrition, and the integration of environmental surveillance into public health systems. Through her research, Dr. Marrufo aims to inform policy and strengthen adaptive capacity in low-resource settings. Her publications address spatial and temporal disease modeling, socio-demographic risk factors during pandemics, and evidence-based approaches to climate-health linkages. These interests position her as a multidisciplinary researcher with a unique perspective on global health, sustainability, and resilience.

Research Skills

Dr. Tatiana Jorge Marrufo possesses a diverse array of research skills that enable her to tackle complex public health challenges related to climate and environmental change. Trained in applied epidemiology at Emory University and in mathematical modeling at the International Center for Theoretical Physics in Italy, she brings a quantitative edge to her research. Her technical capabilities include triangulating environmental, climate, and health data, which she honed during training with the Brazilian Climate and Health Observatory. She is proficient in using statistical tools such as STATA, SPSS, and Epi-Info for data analysis and is skilled in developing and interpreting regression models to assess disease-environment relationships. Dr. Marrufo is adept at vulnerability assessments, impact evaluations, and geographic information system (GIS)-based spatial analysis, which she applies to forecast disease outbreaks and inform early warning systems. Additionally, she has substantial experience in qualitative research methods, mixed-methods studies, and public health systems analysis. Her coordination of the National Health Research Agenda and her leadership in various national adaptation assessments showcase her abilities in project design, stakeholder engagement, and strategic planning. These research competencies, combined with her interdisciplinary academic background, empower her to deliver innovative and actionable insights in the field of environmental and public health.

Awards and Honors

While Dr. Tatiana Jorge Marrufo’s curriculum vitae does not list specific formal awards, her distinguished career and recognition at both national and international levels reflect her status as a leading expert in public health and climate-health intersections in Mozambique. Her selection for advanced training at esteemed institutions like Emory University, FIOCRUZ in Brazil, and the ICTP in Italy attests to her academic excellence and global research relevance. Furthermore, she has been consistently invited to speak at high-profile international conferences and symposiums, such as COP26, the International Conference on Climate Services, and the IANPHI Annual Meeting, demonstrating her thought leadership and recognition among international peers. Her leadership roles within the National Institute of Health—particularly as the Head of the Technical Secretariat and Coordinator of national environmental health programs—represent significant institutional trust in her expertise. The pioneering initiatives she has led, including Mozambique’s first Health Vulnerability and Adaptation Assessment and the Climate Environment and Health Research Agenda, are landmark achievements. Through these accomplishments, Dr. Marrufo has received informal but impactful honors: influence over national policy, academic recognition, and a leadership position within the scientific and health governance communities—making her a strong contender for high-level research accolades.

Conclusion

Dr. Tatiana Jorge Marrufo exemplifies the qualities of a forward-thinking, impactful, and committed public health researcher. Her unique ability to integrate environmental science, public health, and epidemiological modeling makes her work both locally relevant and globally significant. Through her strategic roles at the National Institute of Health and her involvement in national and international research collaborations, Dr. Marrufo has not only advanced scientific knowledge but also driven policy development and public health action. Her contributions to the development of Mozambique’s Health National Adaptation Plan and the Climate and Health Research Agenda reflect her visionary leadership in climate-resilient health systems. Despite not having a long list of formal awards, her influence and recognition through speaking engagements, research leadership, and institutional trust are undeniable testaments to her professional excellence. Her multidisciplinary skills, from data analysis to stakeholder engagement, position her as a catalyst for change in climate-health integration. With her continued dedication and strategic insight, Dr. Marrufo is exceptionally well-suited for the Best Researcher Award. As the world grapples with the health implications of climate change, her work stands as a model of innovation, resilience, and scientific rigor in the Global South.

Publications Top Notes

  • Title: Integration and use of climate data by the national health system in Mozambique

  • Authors: J. Pinto, Judite; N. Cossa, Nelson; M. Ferrari, Mara; T.J. Marrufo, Tatiana J.; A.P. Cardoso, Ana Paula

  • Year: 2025

Mamiko Numata | Environmental Science | Best Researcher Award

Dr. Mamiko Numata | Environmental Science | Best Researcher Award

Researcher from Land Institute of Japan, Japan

Dr. Mamiko Numata is a distinguished researcher at the Land Institute of Japan and the School of Environment and Society at the Institute of Science Tokyo. Her academic and professional journey is rooted in the interdisciplinary domains of environmental studies, urban planning, and landscape design. With a comprehensive background in both environmental sciences and education, Dr. Numata has built an impactful career focusing on architectural and city planning, as well as social infrastructure. Her research addresses complex environmental and urban development challenges, emphasizing sustainable landscapes and policy frameworks. Over the years, she has contributed to numerous government and academic committees, actively shaping urban policy and design strategies in Tokyo and beyond. Her experience ranges from academic institutions to applied research institutes, bridging theoretical knowledge with practical implementation. Dr. Numata’s interest in comparative urban studies, particularly with Germany, further strengthens her global perspective. Her dedication to advancing sustainable cities and communities is evident through her longstanding involvement in planning councils and editorial boards. Known for her thoughtful integration of environment, design, and policy, Dr. Numata continues to play a significant role in Japan’s urban development landscape. Her profile reflects a unique combination of scholarly depth and public service, making her a respected figure in her field.

Professional Profile

Education

Dr. Mamiko Numata’s educational background is rooted in the environmental and social sciences, forming a strong foundation for her career in urban planning and environmental policy. She earned her doctorate in Environmental Studies in March 2012 from the University of Tsukuba, a leading institution known for its interdisciplinary approach to environmental issues. This doctoral program equipped her with advanced research skills in environmental systems, sustainability, and landscape architecture, offering her a multifaceted understanding of the interactions between human activities and natural ecosystems. Prior to her PhD, Dr. Numata completed a graduate program at the Tokyo Gakugei University, where she studied from April 2003 to March 2006. This earlier academic training likely emphasized educational theory and social systems, adding to her ability to address policy-related and human-centric aspects of urban planning. Together, these two degrees have enabled her to approach complex urban development problems from both scientific and societal perspectives. Her educational path demonstrates a commitment to continuous learning and an interdisciplinary framework that bridges the environment, policy, and design. The balance of technical and theoretical knowledge gained from these institutions has played a crucial role in shaping her research direction and long-term engagement in academic and policy-making circles.

Professional Experience

Dr. Mamiko Numata has over 15 years of professional experience across academic, governmental, and research institutions, reflecting her sustained commitment to environmental and urban planning. Since October 2020, she has served as a researcher at the Land Institute of Japan while also working within the School of Environment and Society at the Institute of Science Tokyo. These dual roles allow her to engage in both applied research and academic instruction, contributing to policy discourse and scientific inquiry. Previously, from 2013 to 2020, Dr. Numata worked at Tokyo Institute of Technology, where she was involved in high-level urban and environmental research, mentoring students, and publishing scholarly work. Her earliest significant position was at the Urban Environmental Planning Institute between 2007 and 2012, where she focused on real-world applications of urban planning and sustainable design principles. This combination of practical and academic experiences has provided her with a broad understanding of the field’s challenges and possibilities. Dr. Numata has also been actively involved in multiple municipal and national-level committees, advising on landscape design, urban redevelopment, and public infrastructure. Her professional journey shows a strategic blend of fieldwork, research, and civic engagement, establishing her as a leading voice in Japan’s urban environmental landscape.

Research Interests

Dr. Mamiko Numata’s research interests reflect a well-rounded and interdisciplinary approach to contemporary urban and environmental challenges. Her primary areas of focus include urban planning, environmental policy, landscape architecture, and comparative urban studies, with a particular interest in Germany. This cross-national perspective enables her to draw insights from global best practices and adapt them to Japan’s urban development contexts. Within urban planning, she explores how infrastructure, zoning, and city design can contribute to more sustainable and resilient communities. Her work in environmental policy investigates regulatory frameworks and governance models that influence city-level decision-making and ecological preservation. A major component of her research also involves landscape planning, where she examines the intersection of aesthetics, public space functionality, and environmental sustainability. Dr. Numata’s interest in Germany suggests a comparative analytical framework that looks at how European urban models can inform Japanese planning efforts. Her research is situated at the crossroads of civil engineering, architecture, and policy studies, emphasizing practical outcomes through well-informed, data-driven planning. This broad but interconnected research agenda allows her to respond to diverse urban issues ranging from land use and transportation to public engagement and design ethics, making her a valuable contributor to both academic and policy-making communities.

Research Skills

Dr. Mamiko Numata possesses a diverse set of research skills that span both qualitative and quantitative methodologies, enabling her to tackle complex questions in urban planning and environmental policy. Her expertise includes spatial analysis, environmental impact assessment, urban design evaluation, and policy analysis. Through her training and professional experience, she has developed strong competencies in systems thinking and interdisciplinary research design, which are essential for addressing multifaceted urban and ecological challenges. Dr. Numata is skilled in analyzing built environments and developing evidence-based recommendations for sustainable urban growth. She is also proficient in conducting fieldwork, stakeholder interviews, and comparative urban studies, particularly involving cross-national analysis between Japan and Germany. Furthermore, she has demonstrated her ability to synthesize academic literature, civic needs, and policy objectives to produce practical planning guidelines. Her committee work reflects her applied policy research skills, often informing local and national urban development projects. Dr. Numata also engages in academic publishing and editorial review, suggesting a strong command of scholarly communication and peer evaluation. Altogether, her research skills reflect a balance of analytical rigor, real-world application, and collaborative engagement, making her highly effective in contributing to both academic scholarship and public policy planning.

Awards and Honors

While specific awards and honors have not been explicitly listed in her publicly available profile, Dr. Mamiko Numata’s extensive committee involvement and institutional affiliations suggest a high level of recognition and trust within the academic and professional community. Her appointment to prestigious councils and editorial boards—such as the Journal of the Architectural Institute of Japan Editorial Committee and the Tokyo Minato Ward Urban Development Review Board—reflects the esteem in which she is held. Serving on over ten planning and design-related committees from 2014 through 2025, she has been consistently chosen to guide and review urban development, landscape policy, and academic publications. These roles are typically offered to individuals with a proven track record of excellence and leadership in their field. Such sustained engagement indicates peer recognition equivalent to formal honors, especially in Japan’s consensus-driven professional culture. Although direct awards are not documented, her contributions to public policy, academic research, and professional organizations highlight a career marked by distinction and impact. Future nominations for formal academic or governmental honors may be warranted based on her continued service and research achievements. Her body of work and influence already align with the expectations for award-worthy recognition within urban environmental planning.

Conclusion

Dr. Mamiko Numata stands out as a researcher who effectively bridges academic theory, urban policy, and environmental planning. Her educational background, professional trajectory, and deep involvement in committee work underscore a holistic approach to solving real-world urban challenges. With a focus on sustainable landscape design, urban planning, and comparative international frameworks, she brings a thoughtful and informed perspective to the field. Her strengths lie in interdisciplinary integration, public engagement, and institutional leadership, making her a key contributor to Japan’s environmental and infrastructural development discourse. While her profile could benefit from greater visibility in international collaborations and more detailed documentation of scholarly publications or formal awards, her overall contributions are significant and influential. Dr. Numata’s work continues to shape urban policy and design in both academic and municipal contexts. She embodies the qualities of a researcher deeply committed to public service, knowledge advancement, and sustainable urban futures. With her combined academic expertise and policy-oriented practice, she is well-positioned for recognition, such as the Best Researcher Award. Her profile presents a compelling case for honoring her dedication and impact in environmental and urban research.

Publications Top Notes

  1. Title: A Study on the Coexistence of Monument Protection and Energy in Southern Germany’s the Old Town—Focusing on Installation Requirements for Rooftop PV
    Author: Mamiko Numata
    Year: 2025

  2. Title: Study on the coexistence of monument protection and energy in old towns in southern GermanyAuthor
    : Mamiko Numata
    Year: 2024

  3. Title: A Study on Policy Trends Towards the Spread of Photovoltaic in Germany
    Author: Mamiko Numata
    Year: 2023

  4. Title: A Study on the Current State and Problems of Outdoor Advertisement Administration and Landscape Administration
    Authors: Mamiko Numata, Keiichi Shirakawa, Syoji Sasaki, Yasuki Tsuchiya, Natsuo Ito
    Year :

  5. Title: A Study on the Conservation Policy of Historic Buildings Focusing on the Situations of Ownership Transfer
    Authors: On Takasaki, Norihiro Nakai, Mamiko Numata, Kei Sakamura
    Year: 2022

  6. Title: A Study on the Difference Between the Green Coverage and the Green Evaluation Captured from the Impressive Landscape
    Author: Mamiko Numata
    Year: 2022

  7. Title: A Study on the Consistency of the Plan of the Area Around the Wards Boundary to Improve the Wooden Densely-Built Urban Area
    Authors: Sakiko Hamada, Norihiro Nakai, Mamiko Numata, Kei Sakamura
    Year: 2021

  8. Title: A Study on the Making of Flood Risk Reduction Measures of Cities Damaged by Floods by
    Hayato Ihara, Norihiro Nakai, Mamiko Numata, Kei Sakamura
    Year :

  9. Title: Study of the Division of Functions Among Urban Centers and Their Changes in Cities with Two Urban Centers
    Authors: Yasuki Tsuchiya, Norihiro Nakai, Mamiko Numata, Kei Sakamura
    Year: 2021

  10. Title: A Study of the Effects of Buildings on the Surroundings Environment of Flagpole-Shaped Sites
    Authors: Mamiko Numata, Norihiro Naka

  11. Title: A Study on the Land Use Changes After Large Factory Closure
    Authors: Yasuki Tsuchiya, Norihiro Nakai, Mamiko Numata
    Year: 2019

 

Yonghong Hao | Environmental Science | Best Researcher Award

Prof. Yonghong Hao | Environmental Science | Best Researcher Award

Professor Yonghong Hao is a distinguished researcher in hydrology and water resources, currently serving at the Tianjin Key Laboratory of Water Resources and Environment, Tianjin Normal University. With extensive experience in groundwater hydrology, he has made significant contributions to understanding spring discharge dynamics, climate change impacts, and hydrogeological modeling. His research integrates advanced methodologies such as deep learning, hydraulic tomography, and wavelet analysis to improve water resource management. As an Associate Editor of the Journal of Hydrology, he plays a vital role in advancing scientific discourse in his field. His extensive publication record in high-impact journals and numerous research grants highlight his academic excellence. Over the years, his work has received national and international recognition, earning prestigious awards and honors.

Professional Profile

Education

Professor Hao earned his Bachelor of Science degree in Farmland and Water Conservancy from Wuhan University of Water Resources and Electric Power in 1985. He later pursued a Master of Science in Water Resources from the same institution, graduating in 1991. His academic training laid a strong foundation in hydrology, groundwater management, and environmental water systems. His education provided him with expertise in mathematical modeling, hydrogeological assessments, and climate-related hydrological studies, which have significantly influenced his research career.

Professional Experience

Professor Hao has built a remarkable career in hydrological research and academia. He is a professor at Tianjin Normal University, where he works at the Key Laboratory of Water Resources and Environment. His role involves mentoring students, conducting advanced research, and leading projects in groundwater hydrology. He also serves as an Associate Editor for the Journal of Hydrology, contributing to the peer-review process and shaping the publication of groundbreaking research. His professional journey includes leading numerous national and international research projects on groundwater sustainability, climate impact assessments, and hydrological modeling.

Research Interests

Professor Hao’s research focuses on groundwater hydrology, hydrogeological modeling, and the impact of climate change on water resources. He is particularly interested in developing mathematical models to simulate hydrological processes, identifying human-induced and natural influences on spring discharge, and applying machine learning techniques to enhance water resource predictions. His studies explore the use of hydraulic tomography for aquifer characterization, extreme value statistics for hydrological assessments, and satellite-based monitoring of groundwater storage variations. His work aims to develop sustainable water management solutions in the face of environmental challenges.

Research Skills

With extensive experience in hydrological research, Professor Hao possesses strong analytical and modeling skills. He is proficient in grey system modeling, wavelet analysis, hydraulic tomography, and machine learning applications in hydrology. His expertise extends to numerical simulations, geostatistical methods, and remote sensing for groundwater assessment. He has demonstrated a deep understanding of extreme climate impacts on water systems and has successfully implemented statistical techniques to quantify these changes. His ability to integrate advanced computational tools into hydrological studies enhances the accuracy and efficiency of water resource management strategies.

Awards and Honors

Professor Hao has received several prestigious awards for his contributions to hydrological research. In 2020, he was honored with the Tianjin Natural Science Third Prize for his work on the impacts of climate change and human activities on karst spring discharge in Northern China. In 2024, he received the Award for Outstanding Contributions to Taiwan’s Society of Groundwater Resources and Hydrogeology, recognizing his role in advancing groundwater research. These accolades highlight his commitment to scientific excellence and the practical application of his research in environmental sustainability.

Conclusion

Professor Yonghong Hao is a leading figure in groundwater hydrology, known for his innovative research and contributions to environmental sustainability. His expertise in hydrological modeling, climate change assessments, and groundwater management has earned him widespread recognition. His dedication to advancing knowledge through extensive publications, research grants, and academic leadership demonstrates his impact on the field. With a strong foundation in research methodologies and a commitment to solving real-world water challenges, Professor Hao is a well-deserving candidate for prestigious research awards. His work continues to shape the future of water resource management and environmental conservation.

Publications Top Notes

  1. Title: Investigating hydrological processes using explainable deep-learning models
    Authors: W. Liu, Wenqiang; H. Hao, Huiqing; X. Song, Xiehui; X. Huang, Xin; X. Yan, Xiping
    Year: 2025

  2. Title: Insight into glacio-hydrological processes using explainable machine-learning (XAI) models
    Authors: H. Hao, Huiqing; Y. Hao, Yonghong; Z. Li, Zhongqin; Q. Liu, Qi; T.J. Yeh, Tianchyi Jim
    Year: 2024
    Citations: 5

  3. Title: Analysis of the spatiotemporal variation of groundwater storage in Ordos Basin based on GRACE gravity satellite data
    Authors: J. Zhao, Juan; G. Li, Geng; Z. Zhu, Ziyue; Q. Liu, Qi; T.J. Yeh, Tianchyi Jim
    Year: 2024
    Citations: 6

  4. Title: The impact of heterogeneity at various spatial locations on dune-induced hyporheic exchange
    Authors: X. Su, Xiaoru; T.J. Yeh, Tianchyi Jim; K. Li, Kuangjia; W. Wang, Wenke; Y. Hao, Yonghong
    Year: 2024
    Citations: 1

  5. Title: Spring Flow Prediction Model Based on VMD and Attention Mechanism LSTM
    Authors: J. Wang, Jiayuan; B. Zhang, Baoju; Y. Hao, Yonghong; C. Guo, Cong; Y. Zhu, Yuhao

  6. Title: Simulation of spring discharge using graph neural networks at Niangziguan Springs, China
    Authors: Y. Gai, Yujing; M. Wang, Mingyang; Y. Wu, Yue; T.J. Yeh, Tianchyi Jim; Y. Hao, Yonghong
    Year: 2023
    Citations: 8

  7. Title: Analysis of unsaturated-saturated flow induced by a vadose zone well injection
    Authors: C. Qi, Cuiting; H. Zhan, Hongbin; Y. Hao, Yonghong
    Year: 2023
    Citations: 1

  8. Title: Quantifying the Effect of Driving Factors on Spring Discharge in an Industrialized Karst Watershed
    Authors: X. Gu, Xiufen; S. Jamshidi, Sajad; J. Qian, Jiazhong; H. Sun, Hongguang; D.K. Niyogi, Dev K.
    Year: 2023

  9. Title: Boundary-to-solution mapping for groundwater flows in a Toth basin
    Authors: J. Sun, Jingwei; J. Li, Jun; Y. Hao, Yonghong; Y. Sun, Yi; Q. Wang, Qi
    Year: 2023
    Citations: 1

  10. Title: Calibrating a model of depth to water table using Fourier series and Simpson numerical integration
    Authors: K. Wang, Kaiyan; J. Li, Jun; W. Wang, Wenke; T.J. Yeh, Tianchyi Jim; Y. Hao, Yonghong
    Year: 2023
    Citations: 1

 

Yunfeng Peng | Environmental Science | Best Researcher Award

Prof. Yunfeng Peng | Environmental Science | Best Researcher Award

Professor at Institute of Botany, Chinese Academy of Sciences, China

Prof. Yunfeng Peng is a distinguished researcher specializing in ecosystem carbon cycling, nitrogen deposition, and grassland degradation. He is a full professor at the Institute of Botany, Chinese Academy of Sciences, with extensive experience in conducting large-scale field surveys, manipulative experiments, and meta-analyses. His research provides critical insights into the effects of climate change and human activities on carbon and nitrogen dynamics in terrestrial ecosystems. Prof. Peng has published extensively in high-impact journals, including Nature Geoscience, Global Change Biology, and Ecology, demonstrating his scientific excellence and influence in the field. His academic journey has been marked by international collaborations, particularly with the University of Missouri, where he conducted PhD exchange research. Over the years, he has made significant contributions to understanding soil carbon fluxes, nitrogen saturation, and the impact of global change on ecosystem processes. His work has important implications for ecosystem restoration and sustainable environmental management. Prof. Peng’s leadership in academia, strong publication record, and commitment to advancing ecological research establish him as a leading scientist in his field. His research is crucial for developing strategies to mitigate climate change effects and enhance ecosystem resilience in response to global environmental challenges.

Professional Profile

Education

Prof. Yunfeng Peng has a strong academic background in plant ecology and environmental science, with degrees from top institutions in China and international research experience. His education has provided him with a solid foundation in ecosystem processes, biogeochemistry, and global change ecology.

  • Ph.D. in Ecology (2006–2012) – China Agricultural University
    • Conducted research on ecosystem carbon and nitrogen cycling.
  • Ph.D. Exchange Program (2010–2012) – University of Missouri, Columbia, USA
    • Specialized in ecosystem nutrient dynamics and plant-soil interactions.
  • Bachelor’s Degree in Ecology (2002–2006) – Agricultural University of Hebei
    • Focused on plant physiology, soil science, and ecosystem processes.

Throughout his academic journey, Prof. Peng has gained expertise in experimental design, data analysis, and environmental modeling, which have shaped his research contributions. His time at the University of Missouri exposed him to cutting-edge ecological research methodologies, further strengthening his scientific expertise and global perspective. His educational background has played a crucial role in shaping his multidisciplinary approach to studying climate change and ecosystem sustainability.

Professional Experience

Prof. Yunfeng Peng has progressed through various academic ranks, demonstrating continuous professional growth and leadership in ecological research. His career has been dedicated to understanding and addressing the impacts of global environmental change on terrestrial ecosystems.

  • Full Professor (2024–Present) – Institute of Botany, Chinese Academy of Sciences
    • Leads research on carbon and nitrogen dynamics in changing climates.
  • Associate Professor (2018–2024) – Institute of Botany, Chinese Academy of Sciences
    • Conducted high-impact research on soil respiration, nitrogen enrichment, and permafrost carbon fluxes.
  • Assistant Professor (2015–2018) – Institute of Botany, Chinese Academy of Sciences
    • Focused on experimental warming effects and nitrogen deposition in alpine ecosystems.
  • Postdoctoral Researcher (2013–2015) – Institute of Botany, Chinese Academy of Sciences
    • Investigated ecosystem productivity responses to global climate change.

Prof. Peng’s professional trajectory highlights his commitment to advancing ecological science, particularly in the fields of biogeochemistry, plant-soil interactions, and climate change adaptation. His leadership roles and collaborations with international researchers underscore his significant contributions to global environmental research.

Research Interests

Prof. Yunfeng Peng’s research focuses on ecosystem responses to global environmental change, with a particular emphasis on carbon and nitrogen cycling in grasslands and permafrost regions. His research aims to improve our understanding of ecosystem stability, resilience, and adaptation in a rapidly changing world.

His primary research interests include:

  1. Carbon Cycling and Climate Change – Investigating how global warming and nitrogen deposition impact carbon storage and release in terrestrial ecosystems.
  2. Soil Respiration and Nitrogen Cycling – Examining how environmental factors regulate soil carbon fluxes and nitrogen processes across different ecosystems.
  3. Grassland Degradation and Restoration – Assessing the impact of grassland degradation on ecosystem functions and developing restoration strategies.
  4. Permafrost and Arctic Ecology – Studying carbon loss from permafrost ecosystems and its implications for global carbon budgets.
  5. Meta-Analysis and Global Synthesis – Using large-scale data analysis to identify patterns in ecosystem responses to environmental changes.

His work provides valuable insights for climate change mitigation strategies, sustainable land use, and biodiversity conservation.

Research Skills

Prof. Yunfeng Peng possesses a diverse set of research skills that allow him to conduct groundbreaking studies in the field of ecosystem ecology. His expertise spans fieldwork, experimental design, data analysis, and scientific communication.

  1. Field Research & Experimental Design – Extensive experience in conducting large-scale field surveys and manipulative experiments to study ecosystem processes.
  2. Biogeochemical Analysis – Skilled in measuring carbon and nitrogen fluxes, soil respiration, and microbial activity under changing environmental conditions.
  3. Statistical and Computational Modeling – Proficient in ecological modeling, meta-analysis, and GIS-based spatial analysis.
  4. Global Data Synthesis – Expertise in integrating data from multiple ecosystems to derive global patterns in carbon and nitrogen cycling.
  5. Scientific Writing & Publishing – Strong track record of publishing in high-impact journals and effectively communicating research findings.
  6. Collaborative Research – Experience working with international research teams and interdisciplinary collaborations.

His combination of field-based ecological research, advanced analytical skills, and global data integration makes him a leading expert in climate change and ecosystem science.

Awards and Honors

Prof. Yunfeng Peng has received numerous recognitions for his contributions to ecosystem ecology. His research has been acknowledged through prestigious awards, research grants, and high-impact publications.

Some of his key awards and honors include:

  1. Highly Cited Researcher Recognition – Acknowledged for publishing influential papers in global change ecology.
  2. Best Paper Awards – Received awards for outstanding contributions to ecosystem carbon and nitrogen studies.
  3. Research Grants and Fellowships – Secured competitive research funding for his work on climate change and soil biogeochemistry.
  4. Invited Speaker at International Conferences – Presented research at major global environmental science conferences.
  5. Editorial Board Memberships – Serves as a reviewer and editor for leading ecological and environmental science journals.

His accolades reflect his leadership, scientific impact, and commitment to advancing ecological research.

Conclusion

Prof. Yunfeng Peng is a highly accomplished researcher whose work has significantly advanced our understanding of carbon and nitrogen dynamics in terrestrial ecosystems. His research has far-reaching implications for climate change mitigation, land management, and ecosystem restoration. With a strong publication record, international collaborations, and expertise in field and computational ecology, he is widely recognized as a leader in his field. His commitment to scientific excellence, interdisciplinary collaboration, and global environmental sustainability makes him a key figure in ecosystem research. Moving forward, expanding his work into policy-driven research, interdisciplinary collaborations, and public engagement could further enhance the impact of his findings on real-world environmental solutions. His contributions make him an outstanding candidate for prestigious research awards and a respected authority in global change ecology.

Publications Top Notes

  • Title: Heating up the roof of the world: tracing the impacts of in-situ warming on carbon cycle in alpine grasslands on the Tibetan Plateau
    Authors: Y. Bai Yuxuan, Y. Peng Yunfeng, D. Zhang Dianye, Y. Xie Yuhong, Y. Yang Yuanhe
    Year: 2025
    Citations: 1

  • Title: Metagenomic insights into microbial community structure and metabolism in alpine permafrost on the Tibetan Plateau
    Authors: L. Kang Luyao, Y. Song Yutong, R. MacKelprang Rachel, Y. Peng Yunfeng, Y. Yang Yuanhe
    Year: 2024
    Citations: 13

  • Title: Enhanced response of soil respiration to experimental warming upon thermokarst formation
    Authors: G. Wang Guanqin, Y. Peng Yunfeng, L. Chen Leiyi, D. Zhang Dianye, Y. Yang Yuanhe
    Year: 2024
    Citations: 9

  • Title: Responses of soil bacterial functional group diversity to nitrogen enrichment in global grasslands
    Authors: Y. Liu Yang, Y. Peng Yunfeng, Y. Bai Yuxuan, M. Men Mingxin, Z. Peng Zhengping
    Year: 2024
    Citations: 3

  • Title: Widespread cooling of topsoil under nitrogen enrichment and implication for soil carbon flux
    Authors: L. Zhou Lina, Y. Liu Yang, M. Men Mingxin, Z. Peng Zhengping, Y. Peng Yunfeng
    Year: 2024

  • Title: Experimental warming altered plant functional traits and their coordination in a permafrost ecosystem
    Authors: B. Wei Bin, D. Zhang Dianye, G. Wang Guanqin, K. Niu Kechang, Y. Yang Yuanhe
    Year: 2023
    Citations: 26

  • Title: Characteristics of methane emissions from alpine thermokarst lakes on the Tibetan Plateau
    Authors: G. Yang Guibiao, Z. Zheng Zhihu, B.W. Abbott Benjamin W., Y. Peng Yunfeng, Y. Yang Yuanhe
    Year: 2023

 

Chitra Sulkan | Environmental Science | Best Researcher Award

Dr. Chitra Sulkan | Environmental Science | Best Researcher Award

Lead Research and Technology at Elecsome Pty Ltd, Australia

Dr. Chitra Sulkan is an innovative researcher specializing in solar panel recycling and sustainability. With a Ph.D. in Chemical Science and Built Environment, she has dedicated over six years to pioneering novel chemical, mechanical, and thermal recovery processes for valuable materials like silicon, silver, and glass. Currently leading research and technology development at Elecsome Pty Ltd in Australia, Dr. Sulkan focuses on scaling lab-based innovations for industrial applications. Her work contributes significantly to circular economy solutions, enhancing sustainable practices within the solar energy sector. Through numerous publications, conference presentations, and industry collaborations, she remains at the forefront of photovoltaic (PV) waste management and environmental sustainability.

Professional Profile

Education

Dr. Sulkan completed her Ph.D. in Chemical Science and Built Environment through a collaborative program between AcSIR (India) and RMIT University (Australia). She earned her Master of Science in Chemistry from MDU Rohtak, Haryana, India, in 2016, following her Bachelor of Science in Applied Science from the same institution in 2014. Her academic journey has provided her with expertise in solar panel recycling and material recovery, establishing a strong foundation for her research in sustainability.

Professional Experience

Dr. Sulkan serves as the Lead Research and Technology expert at Elecsome Pty Ltd, where she spearheads research initiatives for industrial-scale solar panel recycling. Previously, she worked as a Ph.D. researcher at AcSIR and RMIT University, focusing on innovative material recovery methods from end-of-life solar panels. Her research included life cycle assessment (LCA) studies and process optimizations for polymer and aluminum separation. Earlier in her career, she held academic positions, including Assistant Professor at Hindu Girls College and Visiting Faculty in the Chemistry Department at Deenbandhu Chhotu Ram University.

Research Interests

Dr. Sulkan’s research interests encompass solar panel recycling, material recovery, and sustainability. She is dedicated to developing efficient and eco-friendly recycling techniques for PV modules, with a focus on recovering high-value materials. Her work integrates life cycle assessment (LCA), thermal analysis, and chemical treatments to enhance recycling processes. She is also passionate about circular economy solutions and the industrial applications of sustainable energy practices, actively contributing to the transition toward renewable and sustainable technologies.

Research Skills

Dr. Sulkan possesses expertise in advanced material characterization techniques, including Fourier-transform infrared spectroscopy (FTIR), thermogravimetric analysis (TGA), differential scanning calorimetry (DSC), ultraviolet-visible spectroscopy (UV), X-ray diffraction (XRD), field emission scanning electron microscopy (FE-SEM), and X-ray fluorescence (XRF). Her proficiency in these analytical methods enables precise evaluation of recovered materials from solar panel waste. Additionally, she has significant experience in experimental design, process optimization, and sustainability assessments related to solar panel recycling.

Awards and Honors

Dr. Sulkan has received multiple accolades for her contributions to solar panel recycling research. She won the People’s Choice Award at the Haiku Thesis Competition (2024) at RMIT University and was honored with the Best Oral Presentation Award at the National Conference on Advances in Solar Energy (ASEM-2023). She has also received Best Poster Awards at various national and international conferences, including events at CSIR-NPL, Delhi, and the International Conference on Purification and Recycling of Electronic Materials (ICPREM). Additionally, she secured prestigious research grants from the Council of Scientific and Industrial Research (CSIR) in India.

Conclusion

Dr. Chitra Sulkan is a dedicated sustainability expert making significant strides in solar panel recycling and material recovery. Her extensive research contributions, academic endeavors, and industry leadership underscore her commitment to advancing environmentally sustainable solutions. Through innovative methodologies and interdisciplinary collaboration, she continues to drive impactful changes in the field of renewable energy recycling. With a strong academic and professional background, Dr. Sulkan is poised to shape the future of solar waste management, promoting circular economy principles and sustainable technology solutions worldwide.

Publications Top Notes

  1. Structural Composition and Thermal Stability of Extracted EVA from Silicon Solar Modules Waste
    Authors: Chitra, Sah, D., Lodhi, K., Kant, C., Saini, P., Kumar, S.
    Year: 2020

  2. Extraction and Analysis of Recovered Silver and Silicon from Laboratory Grade Waste Solar Cells
    Authors: Sah, D., Chitra, Lodhi, K., Kant, C., Srivastava, S. K., Kumar, S.
    Year: 2022

  3. Recovery and Analysis of Valuable Materials from Discarded Crystalline Silicon Solar Panel
    Authors: Sah, D., Chitra, Kumar, S.
    Year: 2022

  4. Recovery and Analysis of Polymeric Layers from Waste Solar Module by Chemical Route
    Authors: Chitra, Dheeraj Sah, Parveen Saini, Sushil Kumar
    Year: 2022

  5. Extraction and Analysis of Back Sheet Layer from Waste Modules
    Authors: Chitra, Dheeraj Sah, Parveen Saini, Sushil Kumar
    Year: 2022

  6. Growth of Polycrystalline Silicon Ingots Using Recycle Silicon from Waste Solar Module
    Authors: Sah, D., Chitra, Upadhyay, N.K., Muthiah, S., Sushil Kumar*
    Year: 2023

  7. Investigation and Recovery of Copper from Waste Silicon Solar Module
    Authors: Dheeraj Sah, Chitra, Sushil Kumar*
    Year: 2022

  8. Optimized EVA Decomposition in Bifacial Solar Panels: Sustainable Recovery of Polymerized Oil and Materials
    Authors: Chitra Sulkan*, Prashant Kumar Thakur, Shailza Sharma, Neeraj Das
    Year: 2025

  9. Evaluation of Environmental Footprint: Life Cycle Assessment of Laboratory-Scale Thermal and Chemical Processes Used for Materials Extraction from Waste Silicon Solar Panels
    Authors: Chitra Sulkan, Prashant Kumar Thakur, Rebecca Yang*, Sushil Kumar
    Year: 2025

  10. Sustainable Energy Practices: Analysis of Gases and Particulate Matter Emissions During Pyrolysis of Polymeric Layers of Waste Silicon Solar Panels for Recycling Process
    Authors: Chitra Sulkan, Dheeraj Sah, Rahul, T.K. Mondal, Parveen Saini, Rebecca Yang, Sushil Kumar

 

 

Gomah Nenaah | Environmental Science | Best Researcher Award

Prof. Gomah Nenaah | Environmental Science | Best Researcher Award

Professor of Environmental Sciences at Department of Zoology, Faculty of Science, Kafrelsheikh University, Egypt

Prof. Dr. Gomah E. Nenaah is a distinguished Professor of Ecology and Nanotoxicology, specializing in eco-toxicological studies and the development of nanotechnology-based green pesticides and fungicides. He has been affiliated with the Zoology Department at Kafrelsheikh University, Egypt, since 1997, and has significantly contributed to academic and research excellence at Najran University, Saudi Arabia, between 2007 and 2023. Dr. Nenaah has dedicated his career to studying the ecological impact of natural products and their applications in pest control and antimicrobial activities. His expertise in nanotechnology has led to groundbreaking research in eco-friendly nanopesticides, bioactive nanoemulsions, and green synthesis techniques. With numerous funded projects, extensive publications, and an active presence in the scientific community, Dr. Nenaah continues to be a leader in advancing environmentally safe solutions for agricultural and public health challenges.

Professional Profile

Education

Dr. Nenaah holds a Bachelor of Science in Zoology from Tanta University, Egypt (1995), where he graduated with distinction. He earned his Master of Science in Zoology (Animal Ecology) from the same institution in 2000, focusing on the use of natural plant extracts for pest control. In 2006, he completed his Ph.D. in Zoology (Eco-toxicology) at Tanta University, with a dissertation on the pesticidal efficiency of natural products from wild and medicinal plants, emphasizing their environmental safety. His academic foundation has equipped him with a robust understanding of ecological and toxicological principles, which he has leveraged to develop sustainable and innovative approaches in his field.

Professional Experience

Dr. Nenaah has an impressive academic career spanning over two decades. He began as a Demonstrator at Tanta University (1997) and advanced to Lecturer and Assistant Professor. In 2007, he joined Najran University in Saudi Arabia, where he served as Assistant, Associate, and later full Professor in the Biology Department until 2023. Concurrently, he has been a faculty member at Kafrelsheikh University, Egypt, since 2017. His career has been marked by leadership in multidisciplinary research projects and teaching roles, mentoring students, and conducting eco-toxicological studies. Dr. Nenaah’s professional journey reflects his commitment to fostering academic growth and environmental sustainability.

Research Interests

Dr. Nenaah’s research focuses on natural product-based pest control, nanotechnology, and eco-toxicology. He investigates the isolation and structural characterization of bioactive compounds from aromatic plants, studying their insecticidal and antimicrobial properties. His expertise extends to the synthesis of nanoemulsions and nanoparticles for green pesticide applications, targeting vectors of infectious diseases like dengue fever and phytopathogens affecting agriculture. His studies emphasize eco-friendly solutions to mitigate the environmental risks posed by conventional chemical pesticides. Through his work, Dr. Nenaah aims to bridge the gap between ecological safety and effective pest and pathogen management.

Research Skills

Dr. Nenaah possesses advanced skills in eco-toxicological assessments, nanotechnology-based applications, and bioactive compound synthesis. He is proficient in spectroscopic instrumentation for structural elucidation, green synthesis techniques for nanoparticle development, and experimental designs for evaluating insecticidal, antimicrobial, and antifungal activities. His expertise also includes environmental risk assessment and safety evaluations of nanomaterials. Dr. Nenaah has extensive experience in leading and managing multidisciplinary research projects, analyzing complex data, and publishing findings in high-impact journals, showcasing his ability to translate theoretical knowledge into practical applications.

Awards and Honors

Dr. Nenaah has received numerous accolades for his contributions to science and research. He has successfully secured significant research funding as the principal investigator for multiple projects supported by Najran University, Saudi Arabia. These projects, focusing on eco-friendly nanopesticides, nanofungicides, and green synthesis of bioactive compounds, highlight his innovative approaches. His work has been recognized internationally, earning him a reputable standing in eco-toxicology and nanotechnology. Through his impactful contributions to environmental sustainability and public health, Dr. Nenaah continues to be celebrated as a leading figure in his field.

Conclusion

Prof. Dr. Gomah E. Nenaah is a highly suitable candidate for the Best Researcher Award based on his extensive contributions to eco-toxicology, nanotechnology, and sustainable pest control solutions. His innovative approaches to using natural products and environmentally friendly methods position him as a leader in his field. By addressing areas for improvement, such as commercialization and expanding global collaborations, Dr. Nenaah could further enhance his candidacy and global recognition.

Publication Top Notes

  • Antibacterial and antifungal activities of (beta)-carboline alkaloids of Peganum harmala (L) seeds and their combination effects
    • Authors: G. Nenaah
    • Year: 2010
    • Journal: Fitoterapia 81 (7), 779-782
    • Citations: 264
  • Antimicrobial activity of Calotropis procera Ait. (Asclepiadaceae) and isolation of four flavonoid glycosides as the active constituents
    • Authors: G. Nenaah
    • Year: 2013
    • Journal: World Journal of Microbiology and Biotechnology 29, 1255-1262
    • Citations: 161
  • Chemical composition, toxicity and growth inhibitory activities of essential oils of three Achillea species and their nano-emulsions against Tribolium castaneum (Herbst)
    • Authors: G.E. Nenaah
    • Year: 2014
    • Journal: Industrial Crops and Products 53, 252-260
    • Citations: 150
  • Chemical composition, insecticidal activity and persistence of three Asteraceae essential oils and their nanoemulsions against Callosobruchus maculatus (F.)
    • Authors: G. Nenaah, I.S. Al-Assiuty, B.A.
    • Year: 2015
    • Journal: Journal of Stored Products Research 61, 9-16
    • Citations: 112
  • Chemical composition and the insecticidal activity of certain plants applied as powders and essential oils against two stored-products coleopteran beetles
    • Authors: G.E. Nenaah, S.I.A. Ibrahim
    • Year: 2011
    • Journal: Journal of Pest Science 84, 393-402
    • Citations: 95
  • Chemical composition and antibacterial activity of essential oils and major fractions of four Achillea species and their nanoemulsions against foodborne bacteria
    • Authors: A.A. Almadiy, G.E. Nenaah, B.A. Al-Assiuty, E.A. Moussa, N.M. Mira
    • Year: 2016
    • Journal: LWT-Food Science and Technology 69, 529-537
    • Citations: 83
  • Antimicrobial activity of extracts and latex of Calotropis procera (Ait.) and synergistic effect with reference antimicrobials
    • Authors: G.E. Nenaah, E.M. Ahmed
    • Year: 2011
    • Journal: Research Journal of Medicinal Plant 5 (6), 706-716
    • Citations: 67
  • Potential of using flavonoids, latex and extracts from Calotropis procera (Ait.) as grain protectants against two coleopteran pests of stored rice
    • Authors: G.E. Nenaah
    • Year: 2013
    • Journal: Industrial Crops and Products 45, 327-334
    • Citations: 60
  • Toxic and antifeedant activities of potato glycoalkaloids against Trogoderma granarium (Coleoptera: Dermestidae)
    • Authors: G.E. Nenaah
    • Year: 2011
    • Journal: Journal of Stored Products Research 47 (3), 185-190
    • Citations: 59
  • Individual and synergistic toxicity of solanaceous glycoalkaloids against two coleopteran stored-product insects
    • Authors: G. Nenaah
    • Year: 2011
    • Journal: Journal of Pest Science 84, 77-86
    • Citations: 58

 

 

Michaela Holubová | Fish Ecology | Women Researcher Award

Dr. Michaela Holubová | Fish Ecology | Women Researcher Award

Ceske Budejovice at Biological Center of the Academy of Sciences of the Czech Republic, v.v.i., Czech Republic.

Michel Mutabaruka is a dedicated educator and civil engineer specializing in health safety, environmental engineering, and technical education. With a career spanning over a decade, Michel serves as an assistant lecturer at Rwanda Polytechnic Kigali College and a trainer at Rwanda TVET Trainer Institute, where he plays an influential role in shaping the next generation of technical professionals. His experience in civil engineering education includes teaching a wide array of subjects such as construction safety, materials strength, and structural analysis. Michel is deeply committed to improving technical education standards in Rwanda, actively preparing students for their careers through practical training, supervision of final-year projects, and rigorous academic evaluations. His comprehensive background and teaching expertise make him a valuable contributor to Rwanda’s education and engineering landscape.

Professional Profile

Education

Michel holds a Master’s in Health Safety and Environment Engineering from Chandigarh University (2021-2023) and a Bachelor’s in Civil Engineering from the National University of Rwanda (2006-2010). Complementing his formal education, Michel earned a Postgraduate Diploma in Technical Education (2012-2013) from Kenya Technical Teachers College, enhancing his pedagogical skills in civil engineering. Additionally, he obtained a certificate in National TVET Training from Rwanda TVET Trainer Institute in 2016, underscoring his dedication to technical education. Michel’s education began with a secondary school certificate in Biology-Chemistry (A2) from Byimana School of Sciences (2000-2003), and an English Language Certificate in 2005 from the National University of Rwanda, which strengthened his communication skills essential for an academic career.

Professional Experience

Michel’s professional experience centers on technical education, spanning more than 13 years as an assistant lecturer at Rwanda Polytechnic Kigali College, where he teaches diverse engineering subjects, including Health Safety in Construction, Technical Drawing, and Building Services. His role also involves supervising final-year projects, assessing student work, and designing curricula for technical courses. Since 2018, he has also served at Rwanda TVET Trainer Institute, where he coordinates and administers district-level entrance exams and training programs. Michel’s early experience includes a teaching position at Institut Secondaire d’Enseignement Technique et Artistique de Runda (2010-2011), where he focused on wood treatment, technical drawing, and entrepreneurship education. His roles across institutions highlight his dedication to Rwanda’s technical education, mentoring students and empowering them with skills for successful engineering careers.

Research Interest

Michel’s research interests lie in health safety and environmental engineering within the civil engineering context. His focus includes developing innovative construction safety practices, analyzing sustainable materials, and exploring cost-effective structural solutions for emerging economies. With a strong background in technical education, he is also interested in research methodologies that enhance vocational training and curriculum development for engineering education, especially in health safety compliance. He seeks to contribute to advancements in construction safety standards and explore the environmental impact of engineering practices. Michel’s interest in research aims to bridge practical education with contemporary industry needs, ensuring that future engineers are equipped to face challenges in health safety and sustainability within the construction sector.

Research Skills

Michel possesses a versatile skill set centered around technical education and civil engineering, with particular strengths in course development, student supervision, and curriculum evaluation. He has honed his skills in analyzing engineering materials and cost estimation, critical to construction safety and structural integrity. His experience in preparing and administering assessments has strengthened his analytical skills, and his role in supervising projects allows him to guide research initiatives. Michel’s proficiency in technical drawing and his ability to conduct structured analyses of structures contribute to his practical approach to engineering education. He continues to develop his expertise in environmental and health safety engineering, building a foundation that supports applied research in sustainable and safe construction practices.

Awards and Honors

Although his CV does not mention specific awards, Michel’s long-standing contributions to technical education and civil engineering reflect a professional recognition in his field. His roles at Rwanda Polytechnic and Rwanda TVET Trainer Institute signify a trusted reputation as an educator dedicated to advancing engineering education in Rwanda. Michel’s commitment to academic excellence is further highlighted by his participation in various educational institutions and his contribution to Rwanda’s vocational training sector. Through his service, he has likely garnered appreciation from his colleagues and students, strengthening his influence as an educator. Future research publications and contributions to industry standards may pave the way for formal recognitions, further enhancing his professional profile.

Conclusion

Michel Mutabaruka demonstrates notable strengths as an educator with extensive expertise in health safety, civil engineering, and technical training. His career reflects dedication to advancing technical education in Rwanda, making a positive impact in the field. However, for the Best Researcher Award, a stronger emphasis on original research contributions and active engagement in civil engineering or health safety research would be needed to fully support his candidacy. Pursuing and documenting research publications, industry collaborations, or applied projects would significantly enhance his suitability for this award.

Publication Top Notes

  • Collapse of the native ruffe (Gymnocephalus cernua) population in the Biesbosch lakes (the Netherlands) owing to round goby (Neogobius melanostomus) invasion
    • Authors: T. Jůza, P. Blabolil, R. Baran, D. Bartoň, M. Čech, V. Draštík, J. Frouzová, …
    • Journal: Biological Invasions
    • Year: 2018
    • Citations: 37
  • Contrasting structural complexity differentiate hunting strategy in an ambush apex predator
    • Authors: M. Říha, K.Ø. Gjelland, V. Děd, A.P. Eloranta, R. Rabaneda-Bueno, H. Baktoft, …
    • Journal: Scientific Reports
    • Year: 2021
    • Citations: 24
  • Ontogenetic and interpopulation differences in otolith shape of the European perch (Perca fluviatilis)
    • Authors: A.T. Souza, K. Soukalová, V. Děd, M. Šmejkal, P. Blabolil, M. Říha, T. Jůza, …
    • Journal: Fisheries Research
    • Year: 2020
    • Citations: 22
  • Seasonal habitat use of three predatory fishes in a freshwater ecosystem
    • Authors: M. Říha, R. Rabaneda-Bueno, I. Jarić, A.T. Souza, L. Vejřík, V. Draštík, …
    • Journal: Hydrobiologia
    • Year: 2022
    • Citations: 13
  • Density dependent attributes of fish aggregative behaviour
    • Authors: M. Holubová, M. Čech, M. Vašek, J. Peterka
    • Journal: PeerJ
    • Year: 2019
    • Citations: 13
  • Species‐specific schooling behaviour of fish in the freshwater pelagic habitat: an observational study
    • Authors: M. Holubová, P. Blabolil, M. Čech, M. Vašek, J. Peterka
    • Journal: Journal of Fish Biology
    • Year: 2020
    • Citations: 12
  • Invasive round goby Neogobius melanostomus has sex‐dependent locomotor activity and is under‐represented in catches from passive fishing gear
    • Authors: J. Žák, T. Jůza, P. Blabolil, R. Baran, D. Bartoň, V. Draštík, J. Frouzová, …
    • Journal: Journal of Fish Biology
    • Year: 2018
    • Citations: 12
  • Some like it deep: Intraspecific niche segregation in ruffe (Gymnocephalus cernua)
    • Authors: A.P. Eloranta, I. Vejříková, M. Čech, L. Vejřík, M. Holubová, M. Šmejkal, …
    • Journal: Freshwater Biology
    • Year: 2017
    • Citations: 12
  • Assessment of burbot Lota lota (L. 1758) population sustainability in central European reservoirs
    • Authors: P. Blabolil, J. Duras, T. Jůza, L. Kočvara, J. Matěna, M. Muška, M. Říha, …
    • Journal: Journal of Fish Biology
    • Year: 2018
    • Citations: 11
  • Less is more–Basic quantitative indices for fish can be achieved with reduced gillnet sampling
    • Authors: P. Blabolil, M. Čech, V. Draštík, M. Holubová, L. Kočvara, J. Kubečka, …
    • Journal: Fisheries Research
    • Year: 2021
    • Citations: 9

 

 

Taiwo Ale | Environmental Science | Best Researcher Award

Ms. Taiwo Ale | Environmental Science | Best Researcher Award

Assistant Lecturer at Adekunle Ajasin University, Nigeria

Ale Taiwo Ayomide is an Assistant Lecturer and a skilled architect with a robust background in both academic and professional domains. He holds multiple degrees in architecture and has developed a well-rounded expertise that spans teaching, research, and practical experience in architectural design and urban planning. His research portfolio includes publications in reputable journals and focuses on sustainable architecture, the influence of landscape elements on comfort, and the social implications of architectural spaces. As a reviewer for academic journals, Ayomide contributes to advancing scholarly work, while his memberships in architectural bodies showcase his commitment to maintaining high standards in his profession. His dedication to architectural education, community service, and professional development highlights a career grounded in both practical application and academic inquiry. Ayomide’s well-rounded approach and passion for innovation in architecture position him as a promising researcher in the field.

Education

Ayomide’s educational journey began at Kings and Queens Nursery/Primary School and Model Secondary School in Akure, Ondo State. He then pursued higher education in architecture, earning his Bachelor of Science degree from Joseph Ayo Babalola University, where he graduated with a Second Class Upper in 2015. Ayomide continued his studies with a Master of Technology in Architecture from the Federal University of Technology, Akure (FUTA) in 2018, and he is currently completing a Master of Philosophy at the same institution, expected in 2024. His comprehensive education in architecture has provided a solid foundation for his research and professional endeavors, equipping him with theoretical knowledge and practical skills necessary for innovation in the field.

Professional Experience

Ayomide has a rich background in both professional and academic architecture. He started with practical experience through internships, including placements with the Ministry of Land and Housing in Akure and Tos-Kay Nigeria Limited. He gained experience as a Graduate Architect at the Egbada Local Government in Ibadan and later at Tos-Kay Nigeria Limited, where he honed his skills in architectural design and project management. Academically, he transitioned to teaching as a faculty member at Joseph Ayo Babalola University before joining Adekunle Ajasin University, where he currently lectures. His diverse experience across these roles reflects his deep engagement with architecture, both in practice and education, making him a versatile professional and educator in the field.

Research Interest

Ayomide’s research interests lie at the intersection of architecture, sustainability, and social impact. He is particularly focused on how architectural design and landscape elements can enhance thermal comfort in buildings, a topic that aligns with growing concerns over energy efficiency and sustainable development. Additionally, he explores vernacular architecture in Nigeria, aiming to document and promote indigenous building styles that are environmentally adaptive. His work also examines the role of rural community spaces, such as markets and parks, in fostering social interaction, reflecting his commitment to designing environments that support cultural and social needs. Through his research, Ayomide aims to address contemporary architectural challenges, contributing to the development of spaces that are not only functional but also socially and environmentally responsible.

Research Skills

Ayomide possesses a range of research skills that support his work in architecture and urban studies. He has advanced proficiency in quantitative analysis using SPSS, a critical skill for data-driven architectural research. His technical expertise extends to software like AutoCAD, Revit, and 3D Max, which allow him to create detailed architectural models and conduct spatial analyses. He also brings strong analytical abilities, enabling him to evaluate architectural data and draw meaningful insights, especially in areas related to thermal comfort and sustainable design. Additionally, Ayomide is skilled in academic writing and presentation, as evidenced by his multiple publications in peer-reviewed journals and his role as a reviewer for scholarly publications. His combination of analytical, technical, and communication skills makes him a proficient researcher in the field of architecture.

Awards and Honors

Ayomide has received several awards and recognitions that highlight his academic and professional achievements. Early in his education, he earned accolades in the National Mathematics and Sciences Olympiads, demonstrating his analytical aptitude. More recently, he was awarded a National Research Fund (NRF) grant in 2021, a competitive award that underscores the significance and potential impact of his research in architecture. He is also a certified member of the British International Safety Organization and holds an Expert Rating Global Certification in Human Resource Management, showcasing his commitment to continual professional development. These honors reflect Ayomide’s dedication to excellence and innovation in architecture, as well as his commitment to expanding his skills and contributing to advancements in his field.

Conclusion

Ayomide demonstrates a strong foundation and versatility in architecture, with notable achievements in academic research, teaching, and professional practice. His strengths in research and publication make him a solid candidate for the Best Researcher Award. By continuing to focus on a specialized area and expanding his research’s global impact, he has the potential to achieve even greater recognition in his field. Overall, he exhibits the qualities of a promising researcher with growing influence in architectural studies and urban planning.

Publications Top Notes

  1. Enhancement of workplace comfort through the use of soft landscape”
    • Authors: Ale, T.A., Ayeni, D.A., Adedayo, O.F.
    • Journal: City, Territory and Architecture
    • Year: 2024
    • Volume: 11, Issue 1, Article 11
  2. “Statistical analysis of subsoil geotechnical properties derived from Ogbagi Akoko and other parts of Southwestern Nigeria”
    • Authors: Ale, T.O., Ale, T.A., Wilson, J.A., Ayeniyo, O.O.
    • Journal: Bulletin of Engineering Geology and the Environment
    • Year: 2023
    • Volume: 82, Issue 6, Page 225
  3. “Investigation of shallow subsurface soil for engineering construction: A case study of Etioro Akoko, Southwestern Nigeria”
    • Authors: Ogunribido, T.H., Ale, T.O., Uko, E.K., Ale, T.A.
    • Journal: Cogent Engineering
    • Year: 2023
    • Volume: 10, Issue 1, Article 2199510
  4. “Geotechnical investigation and statistical relationship of subsoil properties derived from two parent rock types in Southwestern Nigeria”
    • Authors: Ale, T.O., Ogunribido, T.H., Kolawole, M.A., Ale, T.A.
    • Journal: Cogent Engineering
    • Year: 2022
    • Volume: 9, Issue 1, Article 2132654